Monday, April 25, 2011

RC car runs on soda can rings

RC car runs on soda can rings

dAlH2Orean H2 R/C Car powered by Aluminium from Aleix Llovet on Vimeo.



A pair of Spanish engineers have recently unveiled the dAlH2Orean (see what they did there?), a R/C car that runs on aluminum. Dropping a few soda can tabs into a tank of sodium hydroxide produces enough hydrogen to power the little speedster for 40 minutes – at almost 20mph.

More @ Engadget

Solar power goes viral: Modified virus improves solar-cell efficiency by one-third

Solar power goes viral: Modified virus improves solar-cell efficiency by one-third


In a solar cell, sunlight hits a light-harvesting material, causing it to release electrons that can be harnessed to produce an electric current. The new MIT research, published online this week in the journal , is based on findings that carbon nanotubes — microscopic, hollow cylinders of pure carbon — can enhance the efficiency of electron collection from a solar cell's surface.

Previous attempts to use the nanotubes, however, had been thwarted by two problems. First, the making of carbon nanotubes generally produces a mix of two types, some of which act as semiconductors (sometimes allowing an electric current to flow, sometimes not) or metals (which act like wires, allowing current to flow easily). The new research, for the first time, showed that the effects of these two types tend to be different, because the semiconducting nanotubes can enhance the performance of solar cells, but the metallic ones have the opposite effect. Second, nanotubes tend to clump together, which reduces their effectiveness.

And that’s where viruses come to the rescue. Graduate students Xiangnan Dang and Hyunjung Yi — working with Angela Belcher, the W. M. Keck Professor of Energy, and several other researchers — found that a genetically engineered version of a called M13, which normally infects bacteria, can be used to control the arrangement of the nanotubes on a surface, keeping the tubes separate so they can’t short out the circuits, and keeping the tubes apart so they don’t clump.

(...) In their tests, adding the virus-built structures enhanced the to 10.6 percent from 8 percent — almost a one-third improvement.

More @ PhysOrg.com

Wednesday, April 20, 2011

Weird Al - Lady Gaga Won't Allow his new Parody

THE GAGA SAGA @ AL'S BLOG

UPDATE: Turns out this was not Lady Gaga's decision. Her manager was speaking "for her", out of order. She has since sent her approval in to Al.



"was really hoping that this blog entry would be all about me announcing the release date of my new album.

Sadly, it’s not.

In a metaphorical nutshell, here’s what happened.

I wrote and recorded what I thought was going to be the first single off of my new album: a parody of “Born This Way” by Lady Gaga called “Perform This Way.” But after hearing it, Lady Gaga decided not to give me permission to release the song, so… it won’t be coming out commercially anytime in the near future. Sorry."

More @ AL'S BLOG:

Magnetic Effect of Light May Lead to Better Solar Power

Magnetic Effect of Light May Lead to Better Solar Power

A dramatic and surprising magnetic effect of light discovered by University of Michigan researchers could lead to solar power without traditional semiconductor-based solar cells.

The researchers found a way to make an "optical battery," said Stephen Rand, a professor in the departments of Electrical Engineering and Computer Science, Physics and Applied Physics.

In the process, they overturned a century-old tenet of physics (...)

Light has electric and magnetic components. Until now, scientists thought the effects of the magnetic field were so weak that they could be ignored. Rand and his colleagues found that at the right intensity, when light is traveling through a material that does not conduct electricity, the light field can generate magnetic effects that are 100 million times stronger than previously expected. Under these circumstances, the magnetic effects develop strength equivalent to a strong electric effect.

More @ Michigan Today

Monday, March 07, 2011

Cave in moon:Base station for astronauts?

Cave in moon:Base station for astronauts?

"New Delhi: Scientists at the Indian Space Research Organization have discovered a giant underground chamber on the moon, which they feel could be used as a base by astronauts on future manned missions to moon.

An analysis by an instrument on Chandrayaan-1 revealed a 1.7-km long and 120-metre wide cave near the moon's equator that is in the Oceanus Procellarum area of the moon that could be a suitable 'base station' for future human missions."

More @ Silicon India

Monday, February 28, 2011

Immaterials: Light painting WiFi

Immaterials: Light painting WiFi

The city is filled with an invisible landscape of networks that is becoming an interwoven part of daily life. WiFi networks and increasingly sophisticated mobile phones are starting to influence how urban environments are experienced and understood. We want to explore and reveal what the immaterial terrain of WiFi looks like and how it relates to the city.


Immaterials: Light painting WiFi from Timo on Vimeo.


More @ YOUrban

Monday, January 31, 2011

New transistors: An alternative to silicon and better than graphene

New transistors: An alternative to silicon and better than graphene

New transistors: An alternative to silicon and better than graphene

Smaller and more energy-efficient electronic chips could be made using molybdenite, a material developed in Switzerland

IMAGE: This is a digital model showing how molybdenite can be integrated into a transistor.

Smaller and more energy-efficient electronic chips could be made using molybdenite. In an article appearing online January 30 in the journal Nature Nanotechnology, EPFL's Laboratory of Nanoscale Electronics and Structures (LANES) publishes a study showing that this material has distinct advantages over traditional silicon or graphene for use in electronics applications.

A discovery made at EPFL could play an important role in electronics, allowing us to make transistors that are smaller and more energy efficient. Research carried out in the Laboratory of Nanoscale Electronics and Structures (LANES) has revealed that molybdenite, or MoS2, is a very effective semiconductor. This mineral, which is abundant in nature, is often used as an element in steel alloys or as an additive in lubricants. But it had not yet been extensively studied for use in electronics

More @ New transistors: An alternative to silicon and better than graphene

Thursday, January 20, 2011

Gorilla Glass has a new competitor called Dragontrail



As smartphones move to ever larger displays they become an important part of the strength component of the overall handset. At the same time users don’t want them to scratch easily or crack if dropped. The best solution at the moment seems to be Gorilla Glass which is used by a range of manufacturers, and has recently even been scaled up to work with tablets and LCD TVs.

But Gorilla Glass isn’t going to be the only option for much longer. Japanses company Asahi has unveiled its own super-strong glass solution called Dragontrail. Although there have been no direct comparisons between the two strong glass products, you can tell from the tests in the video that Dragontrail has some serious strength on offer."

More @ Geek.com:

Wednesday, January 12, 2011

Drunk scientists pour wine on superconductors and make an incredible discovery

Drunk scientists pour wine on superconductors and make an incredible discovery

Superconductors behave like most metals; they conduct electricity. They do so, however, with a twist. All metal has some resistance to the flow of electricity. But when the temperature drops, superconductors get less and less resistant (and therefore more conductive). When they reach very low temperatures, their resistance drops to zero.

Yoshihiko Takano and other researchers at the National Institute for Materials Science in Japan were in the process of creating a certain kind of superconductor by putting a compound in hot water and soaking it for hours. They also soaked the compound in a mixture of water and ethanol. It appears the process was going well, because the scientists decided to have a little party. The party included sake, whisky, various wines, shochu, and beer. At a certain point, the researchers decided to try soaking the compound in the many, many liquors they had on hand and seeing how they compared to the more conventional soaking liquids.

When they tested the resulting materials for superconductivity, they found that the ones soaked in commercial booze came out ahead. About 15 percent of the material became a superconductor for the water mixed with ethanol, and less for the pure water. By comparison, Shochu jacked up conductivity by 23 percent and red wine managed to supercharge over 62 percent of the material. The scientists were pleased, if bemused with their results.

(...)

More @ io9

Monday, January 10, 2011

Horizon MiniPak personal fuel cell charger hits shelves for $100

Horizon MiniPak personal fuel cell charger hits shelves for $100



Designed for charging portable electronics on the go, the MiniPak has two refillable cartridges, each with the juice equivalent of around 1,000 AA batteries. The MiniPak -- which uses Hydrogen to produce electricity -- isn't the first portable fuel cell, but it's certainly the cheapest.

More @ Engadget [Video]

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